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Ellipsometric Measurements of the Thermal Stability of Alternative Fuels

机译:替代燃料的热稳定性的椭偏测量

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摘要

Thermal stability is an important characteristic of alternative fuels that must be evaluated before they can be used in aviation engines. Thermal stability refers to the degree to which a fuel breaks down when it is heated prior to combustion. This characteristic is of great importance to the effectiveness of the fuel as a coolant and to the engine's combustion performance. The thermal stability of Sasol iso-paraffinic kerosene (IPK), a synthetic alternative to Jet-A, with varying levels of naphthalene has been studied on aluminum and stainless steel substrates at 300-400°C. This was conducted using a spectroscopic ellipsometer to measure the thickness of deposits left on the heated substrates. Ellipsometry is an optical technique that measures the changes in a light beam's polarization and intensity after it reflects from a thin film to determine the film's physical and optical properties. It was observed that, as would be expected, increasing the temperature minimally increased the deposit thickness for a constant concentration of naphthalene on both substrates. The repeatability of these measurements was verified using multiple trials at identical test conditions. Finally, the effect of increasing the naphthalene concentration at a constant temperature was found to also minimally increase the deposit thickness.
机译:热稳定性是替代燃料的重要特征,必须先对其进行评估,然后才能将其用于航空发动机。热稳定性是指燃料在燃烧之前被加热时分解的程度。该特性对于燃料作为冷却剂的有效性以及发动机的燃烧性能非常重要。已在300-400°C下在铝和不锈钢基材上研究了Sasol异链烷烃煤油(IPK)(Jet-A的合成替代品)与不同含量的萘的热稳定性。这是使用光谱椭偏仪进行的,以测量在加热的基材上残留的沉积物的厚度。椭偏法是一种光学技术,用于测量从薄膜反射回来的光束的偏振和强度的变化,从而确定薄膜的物理和光学特性。可以预料的是,对于在两个衬底上恒定浓度的萘,升高温度最小地增加了沉积厚度。这些测量的可重复性在相同的测试条件下进行了多次试验验证。最后,发现在恒定温度下增加萘浓度的作用也最小程度地增加了沉积物厚度。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2017年第6期|062207.1-062207.8|共8页
  • 作者单位

    Center for Advanced Turbomachinery and Energy Research (CATER), Mechanical and Aerospace Engineering, University of Central Florida, Orlando, FL, United States;

    NASA Glenn Research Center, Cleveland, OH, United States;

    Center for Advanced Turbomachinery and Energy Research (CATER), Mechanical and Aerospace Engineering, University of Central Florida, Orlando, FL, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:26:56

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